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Differences between the models (SHETRAN, WaSiM) and their parameterization may be responsible for the different results (Op de Hipt et al., 2017, Yira et al., 2016). A discussion of the uncertainties related to the calculation of temperature based ETP is given in Kingston et al. (2009). Download : Download high-res image (171KB) Felix OP DE HIPT | Dr. | Bundesanstalt für Gewässerkunde, Koblenz | Fluvial morphology, Sediment dynamics and managment | Research profile Home Bundesanstalt für Gewässerkunde Felix Op de Hipt.

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The problem of low simulated SSY is already discussed in Op de Hipt et al. (2017) and may also be attributed to the parameterization of the erosion component and the insufficient representation of space and time in the model approach. However, the adjustment of the erosion parameters in a way that they reflect the natural conditions is quite. Op de Hipt et al. found an increase from +6 to +19% and a decrease from −11 to −4% in the Dano catchment (4 times larger than the Bankandi-Loffing catchment). It is noteworthy that the selected climate models did not present opposite signals between RCP 4.5 and RCP 8.5. Op de Hipt et al. (Citation 2018) found approximately similar results after bias correction of precipitation for a tropical catchment in Burkina Faso, West Africa. Figure 2. Exceedance probability curve for (a) rainfall, (b) maximum temperature (c) minimum temperature for the historical observed and five different GCMs. We aim to fill this gap by a combined assessment of LULC and climate change over a period of 40 years (1990-2030). The SHETRAN model was set up to simulate and to evaluate the impacts of these changes. SHETRAN was already calibrated and validated in the present study catchment (Op de Hipt et al., 2017). The major aims of this study are, to: 1.

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Op de Hipt et al. (2019) used the SHETRAN model to examine how land use and climate change affected water resources in tropical West Africa. The findings indicate that both climate change and land. PMID: 30412888 DOI: 10.1016/j.scitotenv.2018.10.351 Abstract This study investigates the effect of land use and land cover (LULC) and climate change on catchment hydrology and soil erosion in the Dano catchment in south-western Burkina Faso based on hydrological and soil erosion modeling. Felix op de Hipt B. Diekkrüger +4 authors Kristian Näschen. Environmental Science, Geography. The Science of the total environment. 2019; 49. Save. Assessing the impact of climate change on soil erosion in East Africa using a convection-permitting climate model. S. Chapman C. Birch +5 authors J. Marsham. DOI: 10.1016/J.CATENA.2018.04.013 Corpus ID: 134210528; Soil organic carbon stocks and their determining factors in the Dano catchment (Southwest Burkina Faso) @article{Hounkpatin2018SoilOC, title={Soil organic carbon stocks and their determining factors in the Dano catchment (Southwest Burkina Faso)}, author={Ozias K.L. Hounkpatin and Felix op de Hipt and Aymar Bossa and Gerhard Welp and Wulf.

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@article{opdeHipt2019ModelingTE, title={Modeling the effect of land use and climate change on water resources and soil erosion in a tropical West African catch-ment (Dano, Burkina Faso) using SHETRAN.}, author={Felix op de Hipt and Bernd Diekkr{\"u}ger and Gero Steup and Yacouba Yira and Thomas O. Hoffmann and Michael Rode and Kristian N{\"a. Mouhamed Idrissou 1,2,3, Bernd Diekkrüger 1,* , Bernhard Tischbein 2, Felix Op de Hipt 4, Kristian Näschen 1 , Thomas Poméon 1,† , Yacouba Yira 5 and Boubacar Ibrahim 6 1 Department of Geography, University of Bonn, Meckenheimer Allee 166, 53115 Bonn, Germany; Meet Natascha Op de Hipt, a mindset and business coach who inspires her clients by building them up with unshakeable confidence. Originally from Germany, Natascha has a passion for helping budding, ambitious entrepreneurs who want to stand out, make an impact, and share their gifts with the world—just like she does every day. AMA Style. Idrissou M, Diekkrüger B, Tischbein B, Op de Hipt F, Näschen K, Poméon T, Yira Y, Ibrahim B. Modeling the Impact of Climate and Land Use/Land Cover Change on Water Availability in an Inland Valley Catchment in Burkina Faso.

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Op De Hipt et al., 2019 F. Op De Hipt , B. Diekkruger , G. Steup , Y. Yira , T. Hoffmann , M. Rode , K. Naschen Modeling the effect of land use and climate change on water resources and soil erosion in a tropical West African catchment (Dano, Burkina Faso) using SHETRAN Dr Michael Op de Hipt has many years of management experience in the mechanical engi-neering industry as as Managing Director and as head of research and development. He gained international experience through various assignments abroad in Asia and America in the areas of technology transfer, cooperation, and joint ventures.